In situ synchrotron-based IR microspectroscopy to study catalytic reactions in zeolite crystals

Publication date

2008

Authors

Stavitski, I.ISNI 0000000388999295
Kox, M.H.F.ISNI 000000038932429X
Swart, IngmarORCID 0000-0003-3201-7301ISNI 0000000390199991
De Groot, F.ISNI 0000000114483312
Weckhuysen, B.M.ORCID 0000-0001-5245-1426ISNI 0000000110540180

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Abstract

In recent years a number of in situ microspectroscopic techniques have been explored to investigate catalytic reactions taking place in heterogeneous catalysts in a timeand space-resolved manner.[1–8] These spectroscopic methods have proven to be very successful in elucidating valuable structure–function relationships for acid–base catalytic reactions. In the work of Roeffaers et al. fluorescence microscopy has been applied to demonstrate the crystal-face-dependent catalysis on layered double hydroxide (LDH) materials.[1] By this elegant approach one can track interconversion processes of individual molecules in catalytic solids and obtain indirect data on the chemical nature of the reaction products formed, provided they display fluorescence. For example, the red shift of the emission bands of specific carbocations formed was used to visualize the degree of oligomerization of cyclic alcohols in individual H-ZSM-5 zeolite particles.[3]

Keywords

heterogeneous catalysis, IR microscopy, oligomerization, synchrotron radiation, zeolites, FLUORESCENCE MICROSCOPY, ZSM-5 ZEOLITE, ACID ZEOLITES, INTERGROWTH, SPECTROSCOPY, ADSORPTION, CHEMISTRY, TEMPLATE, BEHAVIOR, METHANOL, Taverne

Citation

Stavitski, E, Kox, M H F, Swart, I, de Groot, F M F & Weckhuysen, B M 2008, 'In situ synchrotron-based IR microspectroscopy to study catalytic reactions in zeolite crystals', Angewandte Chemie-International Edition, vol. 47, no. 19, pp. 3543-3547. https://doi.org/10.1002/anie.200705562